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2. Insecticidal proteins and RNAi in the control of insects

4. GIS-Enhanced Survey of Potential Aedes aegypti and Aedes albopictus Artificial Oviposition Containers Distributed across Communities in Trinidad, West Indies.

5. Demonstration of RNAi Yeast Insecticide Activity in Semi-Field Larvicide and Attractive Targeted Sugar Bait Trials Conducted on Aedes and Culex Mosquitoes

16. Correction: Mysore et al. A Broad-Based Mosquito Yeast Interfering RNA Pesticide Targeting Rbfox1 Represses Notch Signaling and Kills Both Larvae and Adult Mosquitoes. Pathogens 2021, 10, 1251

20. A Yeast RNA-Interference Pesticide Targeting the Irx Gene Functions as a Broad-Based Mosquito Larvicide and Adulticide

21. A Broad-Based Mosquito Yeast Interfering RNA Pesticide Targeting Rbfox1 Represses Notch Signaling and Kills Both Larvae and Adult Mosquitoes

23. Additional file 1 of A conserved female-specific larval requirement for MtnB function facilitates sex separation in multiple species of disease vector mosquitoes

24. Repression of dMyc expression by Wingless promotes Rbf-induced [G.sub.1] arrest in the presumptive Drosophila wing margin

27. PeakMatcher

30. Characterization of a dual-action adulticidal and larvicidal interfering RNA pesticide targeting the Shaker gene of multiple disease vector mosquitoes

33. Characterization of a yeast interfering RNA larvicide with a target site conserved in the synaptotagmin gene of multiple disease vector mosquitoes

34. MOESM2 of Yeast interfering RNA larvicides targeting neural genes induce high rates of Anopheles larval mortality

38. Role of semaphorin-1a in the developing visual system of the disease vector mosquito Aedes aegypti

41. A Requirement for Commissureless2 Function during Dipteran Insect Nerve Cord Development

42. Saccharomyces cerevisiae(Baker’s Yeast) as an Interfering RNA Expression and Delivery System

43. Whole-mount in situ hybridization for Analysis of Gene Expression during Aedes aegypti Development: (Protocol 3)

47. [Construction of CyclinD (-/-)/Patched (+/-) double knockout mice]

48. Delayed onset of midline netrin expression in Artemia franciscana coincides with commissural axon growth and provides evidence for homology of midline cells in distantly related arthropods

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